Isbn: 9783319287928 - optical characterization of plasmonic nanostructures: near-field imaging of the magnetic field of light (10 risultati)

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  • Lingua: Inglese

    Editore: Springer, 2016

    3319287923 / 9783319287928

    Serie: Libro 117 di 797 - Springer Theses

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    Condizione: New. In English.

  • Lingua: Inglese

    Editore: Springer, 2016

    3319287923 / 9783319287928

    Serie: Libro 117 di 797 - Springer Theses

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  • Lingua: Inglese

    Editore: Springer, 2016

    3319287923 / 9783319287928

    Serie: Libro 117 di 797 - Springer Theses

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    Da: Revaluation Books, Exeter, Regno UnitoRevaluation Books

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    Hardcover. Condizione: Brand New. 116 pages. 9.25x6.10x0.71 inches. In Stock.

  • Lingua: Inglese

    Editore: Palgrave Macmillan, 2016

    3319287923 / 9783319287928

    Serie: Libro 117 di 797 - Springer Theses

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    Condizione: Sehr gut. Zustand: Sehr gut | Sprache: Englisch | Produktart: Bücher | This thesis focuses on a means of obtaining, for the first time, full electromagnetic imaging of photonic nanostructures. The author also develops a unique practical simulation framework which is used to confirm the results. The development of innovative photonic devices and metamaterials with tailor-made functionalities depends critically on our capability to characterize them and understand the underlying light-matter interactions. Thus, imaging all components of the electromagnetic light field at nanoscale resolution is of paramount importance in this area. This challenge is answered by demonstrating experimentally that a hollow-pyramid aperture probe SNOM can directly image the horizontal magnetic field of light in simple plasmonic antennas ¿ rod, disk and ring. These results are confirmed by numerical simulations, showing that the probe can be approximated, to first order, by a magnetic point-dipole source. This approximation substantially reduces the simulation time and complexity and facilitates the otherwise controversial interpretation of near-field images. The validated technique is used to study complex plasmonic antennas and to explore new opportunities for their engineering and characterization.…

  • Lingua: Inglese

    Editore: Springer, 2016

    3319287923 / 9783319287928

    Serie: Libro 117 di 797 - Springer Theses

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  • Lingua: Inglese

    Editore: Springer International Publishing Apr 2016, 2016

    3319287923 / 9783319287928

    Serie: Libro 117 di 797 - Springer Theses

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    Da: BuchWeltWeit Ludwig Meier e.K., Bergisch Gladbach, GermaniaBuchWeltWeit Ludwig Meier e.K.

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    Buch. Condizione: Neu. This item is printed on demand - it takes 3-4 days longer - Neuware -This thesis focuses on a means of obtaining, for the first time, full electromagnetic imaging of photonic nanostructures. The author also develops a unique practical simulation framework which is used to confirm the results. The development of innovative photonic devices and metamaterials with tailor-made functionalities depends critically on our capability to characterize them and understand the underlying light-matter interactions. Thus, imaging all components of the electromagnetic light field at nanoscale resolution is of paramount importance in this area. This challenge is answered by demonstrating experimentally that a hollow-pyramid aperture probe SNOM can directly image the horizontal magnetic field of light in simple plasmonic antennas - rod, disk and ring. These results are confirmed by numerical simulations, showing that the probe can be approximated, to first order, by a magnetic point-dipole source. This approximation substantially reduces the simulation time and complexity and facilitates the otherwise controversial interpretation of near-field images. The validated technique is used to study complex plasmonic antennas and to explore new opportunities for their engineering and characterization. 116 pp. Englisch.…

  • Lingua: Inglese

    Editore: Palgrave Macmillan, 2016

    3319287923 / 9783319287928

    Serie: Libro 117 di 797 - Springer Theses

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    Buch. Condizione: Neu. nach der Bestellung gedruckt Neuware - Printed after ordering - This thesis focuses on a means of obtaining, for the first time, full electromagnetic imaging of photonic nanostructures. The author also develops a unique practical simulation framework which is used to confirm the results. The development of innovative photonic devices and metamaterials with tailor-made functionalities depends critically on our capability to characterize them and understand the underlying light-matter interactions. Thus, imaging all components of the electromagnetic light field at nanoscale resolution is of paramount importance in this area. This challenge is answered by demonstrating experimentally that a hollow-pyramid aperture probe SNOM can directly image the horizontal magnetic field of light in simple plasmonic antennas - rod, disk and ring. These results are confirmed by numerical simulations, showing that the probe can be approximated, to first order, by a magnetic point-dipole source. This approximation substantially reduces the simulation time and complexity and facilitates the otherwise controversial interpretation of near-field images. The validated technique is used to study complex plasmonic antennas and to explore new opportunities for their engineering and characterization.…

  • Lingua: Inglese

    Editore: Springer, 2016

    3319287923 / 9783319287928

    Serie: Libro 117 di 797 - Springer Theses

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  • Lingua: Inglese

    Editore: Springer, 2016

    3319287923 / 9783319287928

    Serie: Libro 117 di 797 - Springer Theses

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  • Lingua: Inglese

    Editore: Springer, Palgrave Macmillan Apr 2016, 2016

    3319287923 / 9783319287928

    Serie: Libro 117 di 797 - Springer Theses

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    Da: buchversandmimpf2000, Emtmannsberg, BAYE, Germaniabuchversandmimpf2000

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    Buch. Condizione: Neu. This item is printed on demand - Print on Demand Titel. Neuware -This thesis focuses on a means of obtaining, for the first time, full electromagnetic imaging of photonic nanostructures. The author also develops a unique practical simulation framework which is used to confirm the results.The development of innovative photonic devices and metamaterials with tailor-made functionalities depends critically on our capability to characterize them and understand the underlying light-matter interactions. Thus, imaging all components of the electromagnetic light field at nanoscale resolution is of paramount importance in this area. This challenge is answered by demonstrating experimentally that a hollow-pyramid aperture probe SNOM can directly image the horizontal magnetic field of light in simple plasmonic antennas ¿ rod, disk and ring. These results are confirmed by numerical simulations, showing that the probe can be approximated, to first order, by a magnetic point-dipole source. This approximation substantially reduces the simulation time and complexity and facilitates the otherwise controversial interpretation of near-field images. The validated technique is used to study complex plasmonic antennas and to explore new opportunities for their engineering and characterization.Springer-Verlag KG, Sachsenplatz 4-6, 1201 Wien 116 pp. Englisch.…